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EP4206621B1 - Balance de comptoir - Google Patents

Balance de comptoir Download PDF

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Publication number
EP4206621B1
EP4206621B1 EP21218423.8A EP21218423A EP4206621B1 EP 4206621 B1 EP4206621 B1 EP 4206621B1 EP 21218423 A EP21218423 A EP 21218423A EP 4206621 B1 EP4206621 B1 EP 4206621B1
Authority
EP
European Patent Office
Prior art keywords
scales
housing
load
led light
emitting means
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP21218423.8A
Other languages
German (de)
English (en)
Other versions
EP4206621A1 (fr
Inventor
Steffen Buhl
Daniel SAUTER
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Bizerba SE and Co KG
Original Assignee
Bizerba SE and Co KG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Bizerba SE and Co KG filed Critical Bizerba SE and Co KG
Priority to EP21218423.8A priority Critical patent/EP4206621B1/fr
Priority to US18/083,599 priority patent/US12449297B2/en
Publication of EP4206621A1 publication Critical patent/EP4206621A1/fr
Application granted granted Critical
Publication of EP4206621B1 publication Critical patent/EP4206621B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01GWEIGHING
    • G01G21/00Details of weighing apparatus
    • G01G21/28Frames, Housings
    • G01G21/283Details related to a user interface
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01GWEIGHING
    • G01G21/00Details of weighing apparatus
    • G01G21/28Frames, Housings

Definitions

  • the present invention relates to a scale, in particular a shop scale, with a weighing module.
  • the weighing module includes a housing in which a load cell is housed.
  • the load cell includes a fixed section, a deformation section and a movable section.
  • the fixed section is connected to the housing and the movable section carries a load cross with a load plate.
  • the deformation section has a strain gauge for measuring a weight acting on the load plate.
  • Such scales are well known to those skilled in the art. These scales usually include an operator display for interacting with the scale, for example to display a weight or to indicate malfunctions. The operator has to navigate through different menu levels to obtain specific information about the status of the scale. This is often complex and not very intuitive for the operator.
  • the document DE 20 2011 050040 U1 discloses a scale according to the preamble of claim 1.
  • the object of the invention is to create a simple device that informs the operator about the status of the scale and makes it easier for him to interact with the scale.
  • a scale in particular a shop scale, is proposed.
  • the scale includes a weighing module.
  • the weighing module includes a housing in which a load cell is housed.
  • the load cell includes a fixed section, a deformation section and a movable section.
  • the fixed section is connected to the housing.
  • the movable one Section carries a load cross with a load plate.
  • the deformation section has a strain gauge for measuring a weight acting on the load plate.
  • the housing is made in one piece and is trough-shaped. On the outer wall of the one-piece housing, a light strip is attached essentially all the way around the housing.
  • the scale includes a control unit with a state machine that represents at least one technical state of the scale, the control unit controlling the light strip based on the state of the state machine.
  • the technical state represented by the state machine is a paper supply in a printer.
  • the technical state that is represented by the state machine is a difference to a target weight, which is formed by the weight determined by the load cell and the target weight.
  • the technical state that is represented by the state machine is an outdated software version that needs to be updated through updates. In one embodiment, the technical state that is represented by the state machine is a speed of various weight detection steps or processing steps entered via an operator display. In one embodiment, the technical state that is represented by the state machine is that an operator has correctly identified himself at the scale via the operator display.
  • the person skilled in the art understands a one-piece, trough-shaped housing to be a shape of a housing that resembles a trough. It has a square or rectangular shape Base area, whereby the corners can be rounded.
  • the housing has a base body, which in one embodiment is made from a cast metal and can therefore also have complex shapes, in particular openings and inner walls. The length and width of the housing are significantly larger than its height.
  • the housing includes a base plate with side walls that are integrally formed on the base plate.
  • the case is open at the top and with a clearance inside to accommodate different modules such as the load cell, electronic modules and others inside the case.
  • the interior of the housing is covered at the top with a cover.
  • the term one-piece and trough-shaped also includes a housing that has interior partitions for different rooms or stabilizing struts. Furthermore, this also includes a housing whose base plate is stepped-shaped in some places, so that a free space is created at these points of the housing below the base plate of the housing when the base body is placed on a flat surface. This free space is used, for example, for attaching plugs underneath the housing.
  • the housing is also to be understood as being in one piece and trough-shaped if there are through openings at various points in the, in particular stepped, base plate or side walls, for example for attaching plug sockets, passing cables through or installing supports and other elements the scales.
  • the term trough-shaped is therefore only to be seen as descriptive of the basic appearance of the housing.
  • the light strip runs around the housing once, in particular the light strip runs around the housing once in the upper region of its side walls, whereby there can be a small distance between the beginning and end of the light strip in relation to the length of the light strip.
  • the scale includes a load plate that is placed on the load cross. The outer edges of the load plate lead over the Load cross and down over the top edge of the housing so that the load plate floats on the top of the housing like a lid.
  • the light strip is located in the upper region of the side walls of the housing, but below the edges of the load plate.
  • the light strip is attached to the upper edge of the housing in such a way that it is covered by the protruding edges of the load plate. In this case, the light from the light strip shines diffusely under the downward edges of the load plate.
  • the light strip consists of a flexible carrier.
  • the LED lamps are arranged on the flexible support.
  • the carrier comprises one to ten LED lamps per cm of length.
  • electrical lines for controlling the LED lamps are integrated into the flexible carrier material of the light strip.
  • the LED lamps generate light in the wavelength range from 230 nm to 500 nm.
  • the carrier with the LED lamps is coated with phosphorus.
  • the light strip is coated with phosphorus on the side on which the LED lamps are attached. Phosphor converts the blue or ultraviolet light from LED bulbs into white light.
  • each of the LED lamps is or has been individually and separately coated with phosphorus, but that the LED lamps are first mounted on the carrier and then the entire side of the carrier is covered with phosphorus.
  • the density of the LED lamps per length of the light strip can be significantly increased, resulting in a very homogeneous lighting effect.
  • the illumination by the light from the LED lamps is approximately 170° in relation to the plane of the light strip, which means that the light can also be perceived from very acute angles.
  • the flexible carrier comprises first, second and third LED lamps.
  • the first LED lamps produce light in a wavelength range of 450°nm to 500°nm.
  • the second LED lamps generate light in a wavelength range of 500°nm to 570°nm.
  • the third LED lamps produce light in a wavelength range of 610°nm to 760°nm.
  • the first, second and third LED lamps are arranged in regular arrangements on the carrier.
  • the first LED lamps form a first group of LED lamps.
  • the second LED lamps form a second group of LED lamps.
  • the third LED bulbs form a third group of LED bulbs.
  • the LED lamps in a group are controlled together by the control unit.
  • the light strip is covered with silicone on the side on which the LED lamps are attached. Silicone is translucent. At the same time, a diffuse effect is created so that the light from the individual LED lamps is scattered slightly. This creates superimposed colors from the three groups of LED lamps, which are visible to the human eye as blue, green and red, so that almost the entire RGB color
  • the flexible carrier has a layer of adhesive material on the side opposite the LED lamps. In one embodiment it is a layer of thermally conductive adhesive material.
  • the light strip is attached to the housing with the adhesive material, in particular glued.
  • the heat generated by the LED lamps is transferred to the housing via the layer of adhesive material, in particular via the heat-conducting adhesive material.
  • the adhesive material adheres to a surface made of uncoated and/or coated cast metal, so that the housing can be coated or uncoated at the point where the light strip is glued.
  • the light strip is electrically connected to the control unit.
  • the light strip is controlled by the control unit with a direct voltage in the range of 6°Volt to 36°Volt, in particular 12°Volt or 24°Volt.
  • the housing comprises a recess or a one-sided recess, which is attached all around in the upper housing area on the outside of the housing, into which the light strip is glued.
  • recess is understood to mean a recess in the housing wall in the form of a groove.
  • a one-sided recess means an edge that is present, for example, in a sloping housing wall. The edge forms a depression, the rear end of which is a vertical plane to accommodate the light strip.
  • the scale includes a diffuser that is attached to the outside of the housing and covers the recess.
  • the diffuser ensures that the light from the LED light sources is scattered so that it can no longer be seen that they are discrete light sources, but rather that the impression is created that it is an extensive, homogeneous light source.
  • the diffuser also ensures that the light strip appears equally bright from every viewing angle. The diffuser enhances the effect of the phosphorus or silicone.
  • the diffuser is made of a translucent material.
  • the translucent material is a translucent polycarbonate.
  • the diffuser includes structuring on its outside.
  • the structuring makes the diffuser opaque from the outside towards the housing.
  • the diffuser is translucent from the side of the housing to the outside.
  • the diffuser is designed as a ring.
  • the ring has the dimensions of the housing in the area of the recess.
  • the ring is positively attached to the housing above the recess.
  • the ring is attached with a latching mechanism.
  • the diffuser covers the recess.
  • the diffuser is glued or screwed to the housing.
  • the distance between the LED lamps and the inside of the diffuser is less than 3°mm. In one embodiment, the distance between the LED lamps and the inside of the diffuser is less than 1°mm.
  • Fig. 1 shows a scale 10 according to the invention according to a first embodiment.
  • the scale includes a weighing module with a housing 18 in which a load cell is accommodated.
  • the load cell carries a load cross, which in turn carries a load plate 11.
  • the load plate 11 has a downward edge which protrudes over the upper edge of the housing 18.
  • a tripod 15 is attached to the weighing module and carries a printer 12 with a label output 16.
  • the tripod 15 also carries an operator display 13, which is designed as a touchscreen is, and a customer display 14 opposite the operator display 13.
  • the weighing module rests on four feet 17 attached in its corners.
  • a light band 19 is attached all around the outer edge of the housing 18, which is controlled by a control unit depending on the technical condition of the scale.
  • Fig. 2 shows a scale 20 according to the invention according to a second embodiment.
  • the scale includes a weighing module with a housing 28 in which a load cell is accommodated.
  • the load cell carries a load cross, which in turn carries a load plate 21.
  • the load plate 21 has a downward edge which protrudes over the upper edge of the housing 28.
  • the weighing module rests on a frame 25 which carries a printer 22 with a label output 26.
  • the frame 25 also carries an operator display 23, which is designed as a touchscreen, and a customer display 24 opposite the operator display 23.
  • a light band 29 is attached all around the outer edge of the housing 28, which is controlled by a control unit depending on the technical condition of the scale .
  • Fig. 3 shows a section through the housing 18, 28 of a balance 10, 20.
  • the housing 18, 28 is a cast metal housing and can take on complex shapes.
  • a load cell 30 is screwed to a base 35 with screws 34.
  • the load cell 30 comprises a fixed section 31 screwed to the housing 18, 28, a deformation section 32 and a movable section 33, on which a load cross 39 with a fastening 38 is attached.
  • the load cross 39 carries the load plate 11, 21 of the scale, with rubber buffers 40 being attached between the load cross 39 and the load plate 11, 21.
  • the load plate 11, 21 includes a bend 50 on its edges, so that the load plate 11, 21 projects laterally downward over the upper edges of the housing 18, 28.
  • the weight of a product on the load plate 11, 21 and also the weight of the load cross 39 and load plate 11, 21 themselves act on the movable section 33 of the Load cell 30.
  • the measured deformation is determined with an evaluation unit 37 and converted into a weight value of the product.
  • the interior of the housing 18, 28, in which the weighing cell 30 and also a control unit 51 and possibly other components of the scale such as a power supply and the like are located, is covered with a cover 41.
  • the housing 18, 28 consists of a base plate and four upwardly projecting side walls.
  • the housing is made of cast metal and is therefore made in one piece. The transition between the base plate and side walls is slanted.
  • a recess 44 is made in the upper area of the side walls, so that a vertical outer wall 47 is set back somewhat on the side walls of the housing 18, 28.
  • the carrier 42 of the light strip 19, 29 is glued to this vertical outer wall 47.
  • the carrier 42 is made of flexible material and can therefore also be guided around the corners of the housing 18, 28 in the recess 44.
  • flexible means that the carrier 42 can be bent at least perpendicular to the plane in which the carrier 42 runs, but not necessarily also in the plane of the carrier 42 itself.
  • LED lamps 43 are placed on the carrier 42.
  • the LED lamps 43 can be attached in the longitudinal direction of the carrier 42 with a density of up to ten LED lamps 43 per cm.
  • Carrier 42 and LED lamps 43 are covered on the side of the LED lamps with a protective layer 48 made of silicone or phosphorus.
  • the protective layer 48 is not only applied to the LED lamps 43 themselves before they are mounted on the carrier 42, but is attached over the carrier 42 and the LED lamps 42 after the LED lamps 43 have been mounted on the carrier 42. In this way, a higher density of the LED lamps 43 can be achieved on the carrier 42 and the beam angle for homogeneous light of each LED lamp 43 increases to approx. 170°.
  • a protective layer 48 made of silicone is applied when the LED lamps 43 generate light in the wavelength range from 450 ° nm to 500 ° nm, 500 ° nm to 570 ° nm or 610 ° nm to 760 ° nm and the different LED lamps 43 in are arranged in regular arrangements on the carrier 42. As a result, the light strip 19, 29 can be made to light up in RGB colors via the control unit 51.
  • a protective layer 48 made of phosphor is applied when the LED lamps 43 emit light in the wavelength range from 230 nm to 500 nm (ultraviolet to blue light). Through the protective layer 48 made of phosphorus, this light becomes visible to the operator as white light.
  • the recess 44 with carrier 42, LED lamps 43 and protective layer 48 is covered by a diffuser 49.
  • the diffuser 49 offers mechanical protection for the light strip 19, 29 and refracts the light at the same time, so that the light strip 19, 29 acts like a homogeneous light source.
  • the diffuser 49 can be structured on its outer surface, that is, surface-processed.
  • the effect that the light strip 19, 29 acts like a homogeneous light source is caused by the high density of LED lamps 43 and by the common protective layer 48 made of silicone or phosphorus on the LED lamps 43 and by the diffuser 49 and the outside Structuring of the diffuser 49 is reinforced or completed.
  • the diffuser 49 rests on surfaces 45, 46 of the housing 18, 28 above and below the recess 44 and is glued to these surfaces 45, 46, locked or screwed to them with a latching connection.
  • the diffuser 49 is an annular component that is pushed over the housing 18, 28 from below and fits positively onto the side walls of the housing 18, 28.
  • the diffuser 49 is made of translucent material, in particular translucent polycarbonate.
  • the control unit 51 includes a state machine 52, which represents at least one technical state of the scale.
  • the Control unit controls the light strip 19, 29 based on the state of the state machine 52.
  • the technical state that is represented by the state machine can be a paper supply in a printer, a difference to a target weight that is formed by the weight determined by the load cell and the target weight, an outdated software version that needs to be updated through updates, a speed of various weight recording steps or processing steps entered via an operator display or that an operator has correctly identified themselves on the scale via the operator display.
  • the light strip can be controlled, for example, in different colors (red, yellow, green) for an RGB light strip or as glowing or flashing for an RGB light strip monochrome light tape.
  • DSP digital signal processor
  • ASIC application specific integrated circuit
  • FPGA field programmable gate array
  • ROM read only memory
  • RAM random access memory
  • non-volatile memory is provided.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Illuminated Signs And Luminous Advertising (AREA)
  • Fastening Of Light Sources Or Lamp Holders (AREA)

Claims (15)

  1. Balance (10, 20), en particulier balance de magasin, dotée d'un module de pesée, le module de pesée comprenant un boîtier (18, 28) dans lequel est logée une cellule de pesée (30), la cellule de pesée (30) comprenant une portion fixe (31), une portion de déformation (32) et une portion mobile (33), la portion fixe (31) étant reliée au boîtier (18, 28) et la portion mobile (33) portant un croisillon de charge (39) pourvu d'un plateau de charge (11, 21), la portion de déformation (32) comportant une jauge de contrainte (36) destinée à mesurer un poids agissant sur le plateau de charge (11, 21), caractérisée en ce que le boîtier (18, 28) est réalisé d'une seule pièce et en forme d'auge, une bande lumineuse (19, 29), qui est fixée sensiblement tout autour du boîtier (18, 28), étant fixée à la paroi extérieure (47) du boîtier, et en ce que la balance comprend une unité de commande (51) qui comprend une machine d'état (52) qui représente au moins un état technique de la balance, l'unité de commande (51) commandant la bande lumineuse (19, 29) sur la base de l'état de la machine d'état (52).
  2. Balance, notamment balance de magasin, selon la revendication 1, la bande lumineuse comprenant un support flexible (42) sur lequel sont disposées les lampes LED (43), le support (42) comprenant en particulier une à dix lampes LED (43) par cm de longueur.
  3. Balance, notamment balance de magasin, selon la revendication 2, caractérisée en ce que des lignes électriques destinées à la commande des lampes LED (43) sont intégrées dans le support flexible (42) de la bande lumineuse (19, 29) .
  4. Balance, en particulier balance de magasin, selon la revendication 2 ou 3, caractérisée en ce que les lampes LED (43) génèrent de la lumière dans la gamme de longueurs d'onde de 230 nm à 500 nm et sont notamment recouvertes de phosphore, en particulier la bande lumineuse (19, 29) du côté sur lequel les lampes LED (43) sont fixées étant recouverte de phosphore.
  5. Balance, en particulier balance de magasin, selon la revendication 2 ou 3, caractérisée en ce que le support flexible (42) comprend des première, deuxième et troisième lampes LED (43) qui émettent de la lumière dans la gamme de longueurs d'onde de 450 nm à 500 nm, de 500 nm à 570 nm ou de 610 nm à 760 nm et les première, deuxième et troisième lampes LED (43) sont disposées suivant des dispositions régulières sur le support, les première, deuxième et troisième lampes LED (43) étant chacune commandées conjointement en groupe, et en particulier la bande lumineuse du côté sur lequel sont fixées les lampes LED (43) étant recouverte de silicone.
  6. Balance, notamment balance de magasin, selon l'une des revendications 1 à 5, caractérisée en ce que le support flexible (42) comporte une couche de matière adhésive, notamment une couche de matière adhésive thermoconductrice, du côté opposé aux lampes LED (43), la bande lumineuse étant fixée, en particulier collée, au boîtier avec la matière adhésive.
  7. Balance, notamment balance de magasin, selon la revendication 6, caractérisée en ce que le boîtier (18, 28) est en métal moulé et la matière adhésive adhère à une surface en métal moulé non revêtu et/ou revêtu.
  8. Balance, notamment balance de magasin, selon l'une des revendications 1 à 7, caractérisée en ce que la bande lumineuse (19, 29) est reliée électriquement à l'unité de commande (51) et la bande lumineuse est alimentée par l'unité de commande en tension continue comprise entre 6 volts et 36 volts, notamment 12 volts ou 24 volts.
  9. Balance, en particulier balance de magasin, selon l'une des revendications 1 à 8, caractérisée en ce que le boîtier comporte un évidement ou un évidement unilatéral (44) qui est ménagé tout autour dans la zone de boîtier supérieure (18, 28) du côté extérieur (47) du boîtier (18, 28), dans lequel la bande lumineuse (19, 29) est collée.
  10. Balance, notamment balance de magasin, selon la revendication 9, caractérisée en ce que la balance comprend un diffuseur (49) qui est fixé à l'extérieur sur boîtier et qui recouvre l'évidement (44).
  11. Balance, notamment balance de magasin, selon la revendication 10, caractérisée en ce que le diffuseur (49) est en une matière translucide, notamment en polycarbonate translucide.
  12. Balance, notamment balance de magasin, selon la revendication 11, caractérisée en ce que le diffuseur (49) présente sur son côté extérieur une structuration qui le rend opaque dans le sens allant du côté extérieur vers le boîtier et le diffuseur est translucide dans le sens allant du côté du boîtier vers l'extérieur.
  13. Balance, notamment balance de magasin, selon l'une des revendications 10 à 12, caractérisée en ce que le diffuseur (49) est conçu comme un anneau qui a les dimensions du boîtier (18, 28) dans la zone de l'évidement (44), qui est fixé par complémentarité de formes au boîtier par-dessus l'évidement (44) et qui est fixé en particulier avec un mécanisme d'encliquetage.
  14. Balance, notamment balance de magasin, selon l'une des revendications 10 à 13, caractérisée en ce que le diffuseur (49) recouvre l'évidement et est collé ou vissé au boîtier.
  15. Balance, notamment balance de magasin, selon l'une des revendications 10 à 14, caractérisée en ce que la distance entre les lampes LED (43) et le côté intérieur du diffuseur est inférieure à 3 mm, notamment inférieure à 1 mm.
EP21218423.8A 2021-12-31 2021-12-31 Balance de comptoir Active EP4206621B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP21218423.8A EP4206621B1 (fr) 2021-12-31 2021-12-31 Balance de comptoir
US18/083,599 US12449297B2 (en) 2021-12-31 2022-12-19 Retail weighing scale

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP21218423.8A EP4206621B1 (fr) 2021-12-31 2021-12-31 Balance de comptoir

Publications (2)

Publication Number Publication Date
EP4206621A1 EP4206621A1 (fr) 2023-07-05
EP4206621B1 true EP4206621B1 (fr) 2024-03-13

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US (1) US12449297B2 (fr)
EP (1) EP4206621B1 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4286804B1 (fr) * 2022-06-01 2024-07-31 Bizerba SE & Co. KG Balance de magasin

Family Cites Families (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7163311B2 (en) * 2004-10-22 2007-01-16 Kramer James F Foodware having visual sensory stimulating or sensing means
US20070186515A1 (en) * 2006-02-16 2007-08-16 Ruetten Roger M System for monitoring flexible container usage
DE102009049567A1 (de) * 2009-10-15 2011-04-21 Leifheit Ag Personenwaage
JP5687924B2 (ja) * 2011-02-25 2015-03-25 株式会社イシダ 計量印字装置
DE202011050040U1 (de) * 2011-05-05 2011-07-14 Beurer Gmbh Waage
DE102011083562A1 (de) * 2011-09-27 2013-03-28 BSH Bosch und Siemens Hausgeräte GmbH Waage
EP3295770B1 (fr) * 2015-05-08 2020-12-23 Signify Holding B.V. Rampe lumineuse à del et son procédé de fabrication
US20160356640A1 (en) * 2015-06-05 2016-12-08 Joseph M. Freeman Receptacle Scale for Measuring a Weight of a Receptacle
EP3367872A2 (fr) * 2015-10-28 2018-09-05 Acera LLC Source de lumière mobile et portable
US11119019B2 (en) * 2016-06-20 2021-09-14 Anago Limited Cutting force analyser
US20190249854A1 (en) * 2018-02-11 2019-08-15 Giotto's Ind.Inc. Rail Structure And Rail Lighting Structure
US11678753B2 (en) * 2019-10-06 2023-06-20 James F. Kramer Foodware system including a dining plate having sensing component, and information and entertainment display
US20210262851A1 (en) * 2020-02-26 2021-08-26 Illinois Tool Works Inc. Weighing system and method
JP7504730B2 (ja) * 2020-09-04 2024-06-24 東芝テック株式会社 決済装置

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EP4206621A1 (fr) 2023-07-05
US12449297B2 (en) 2025-10-21
US20230213374A1 (en) 2023-07-06

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